Review on Recent Research and Development of Cold Spray Technologies

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Abstract:

Cold spray (CS) is an emerging revolutionary technology for deposition of metal or composite powders at a low temperature. High quality deposits can be produced without heating related defects, such as oxidation, phase transformation and residual tensile stress due to the shrinkage during fast cooling. The present contribution demonstrates the state of the art of CS process. Since nozzle is a key component in the CS equipment to prompt the efficiency of particle acceleration, the progress of its design is summarized. Major issues regarding to the successful adhesion of particles and corresponding interaction with substrates and existing deposits are discussed, in terms of numerical simulation and experimental observation. Current implemented CS applications are presented, and potential industrial applications are discussed. Keywords: cold spray; coatings; rapid manufacturing; particle impact; bonding mechanism; nozzle design

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[1] V. F. K. A.P. Alkhimov, N.I. Nesterovich, and A.N. Papyrin, Russian Patent, (1991).

Google Scholar

[2] N. I. N. A.P. Alkhimov, A.N. Papyrin, V.F. Kosarev, and M.M. Shushpanov, Russian Patent, (1991).

Google Scholar

[3] E. Irissou, J. -G. Legoux, A. Ryabinin, B. Jodoin, C. Moreau, J. Therm. Spray Technol. Vol. 17 (2008) p.495.

DOI: 10.1007/s11666-008-9203-3

Google Scholar

[4] A. P. Alkhimov, A. N. Papyrin, V. F. Kosarev, N. I. Nesterovich, M. M. Shushpanov, USA Patent 5304414, (1994).

Google Scholar

[5] H. Y. Lee, S. H. Jung, S. Y. Lee, Y. H. You, K. H. Ko, Appl. Surf. Sci. Vol. 252 (2005) p.1891.

Google Scholar

[6] H. Lee, Y. Yu, Y. Lee, Y. Hong, K. Ko, J. Therm. Spray Technol. Vol. 13 (2004) p.184.

Google Scholar

[7] Q. Wang, K. Spencer, N. Birbilis, M. -X. Zhang, Surf. Coat. Technol. Vol. 205 (2010) p.50.

Google Scholar

[8] E. Irissou, J. -G. Legoux, B. Arsenault, C. Moreau, J. Therm. Spray Technol. Vol. 16 (2007) p.661.

Google Scholar

[9] T. H. Van Steenkiste, J. R. Smith, R. E. Teets, Surf. Coat. Technol. Vol. 154 (2002) p.237.

Google Scholar

[10] K. Balani, A. Agarwal, S. Seal, J. Karthikeyan, Scr. Mater. Vol. 53 (2005) p.845.

Google Scholar

[11] C. Borchers, F. Gartner, T. Stoltenhoff, H. Kreye, Acta Mater. Vol. 53 (2005) p.2991.

Google Scholar

[12] Q. Wang, N. Birbilis, M. -X. Zhang, Mater. Lett. Vol. 65 (2011) p.1576.

Google Scholar

[13] P. Richer, B. Jodoin, L. Ajdelsztajn, J. Therm. Spray Technol. Vol. 15 (2006) p.246.

Google Scholar

[14] L. Ajdelsztajn, B. Jodoin, P. Richer, E. Sansoucy, E. J. Lavernia, J. Therm. Spray Technol. Vol. 15 (2006) p.495.

DOI: 10.1361/105996306x146857

Google Scholar

[15] K. Kim, M. Watanabe, K. Mitsuishi, K. Iakoubovskii, S. Kuroda, J. Phys. D-Appl. Phys. Vol. 42 (2009) p.5.

Google Scholar

[16] R. Dykhuizen, M. Smith, J. Therm. Spray Technol. Vol. 7 (1998) p.205.

Google Scholar

[17] A. Alkhimov, V. Kosarev, S. Klinkov, J. Therm. Spray Technol. Vol. 10 (2001) p.375.

Google Scholar

[18] R. Lupoi, W. O'Neill, Surf. Coat. Technol. Vol. 206 (2011) p.1069.

Google Scholar

[19] M. Grujicic, C. L. Zhao, W. S. DeRosset, D. Helfritch, Materials & Design Vol. 25 (2004) p.681.

Google Scholar

[20] M. Grujicic, J. R. Saylor, D. E. Beasley, W. S. DeRosset, D. Helfritch, Appl. Surf. Sci. Vol. 219 (2003) p.211.

Google Scholar

[21] V. Champagne, D. Helfritch, P. Leyman, R. Lempicki, S. Grendahl, Modell. Simul. Mater. Sci. Eng. Vol. 13 (2005) p.1119.

DOI: 10.1088/0965-0393/13/7/008

Google Scholar

[22] W. R. M. W. E. Ranz, Chem. Eng. Prog. Vol. 48 (1952) p.141.

Google Scholar

[23] W. R. M. W. E. Ranz, Chem. Eng. Prog. Vol. 48 (1952) p.173.

Google Scholar

[24] T. Stoltenhoff, H. Kreye, H. Richter, J. Therm. Spray Technol. Vol. 11 (2002) p.542.

Google Scholar

[25] F. Gärtner, T. Schmidt, T. Stoltenhoff, H. Kreye, Adv. Eng. Mater. Vol. 8 (2006) p.611.

Google Scholar

[26] H. A. Tobias Schmidt, Frank Ga¨rtner, Horst Richter, Thorsten Stoltenhoff, Heinrich Kreye, and Thomas Klassen, J. Therm. Spray Technol. Vol. (2009) p.

Google Scholar

[27] W. -Y. Li, H. Liao, G. Douchy, C. Coddet, Mater. Des. Vol. 28 (2007) p.2129.

Google Scholar

[28] S. Klinkov, V. Kosarev, V. Zaikovskii, J. Therm. Spray Technol. Vol. 20 (2011) p.837.

Google Scholar

[29] H. Tabbara, S. Gu, D. McCartney, T. Price, P. Shipway, J. Therm. Spray Technol. Vol. 20 (2010) p.608.

Google Scholar

[30] C. d. Donaldson, R. S. Snedeker, J. Fluid Mech. Vol. 45 (1971) p.281.

Google Scholar

[31] G. T. Kalghatgi, B. L. Hunt, Vol. 27 (1976) p.169.

Google Scholar

[32] J. Pattison, S. Celotto, A. Khan, W. O'Neill, Surf. Coat. Technol. Vol. 202 (2008) p.1443.

Google Scholar

[33] M. Grujicic, C. L. Zhao, C. Tong, W. S. DeRosset, D. Helfritch, Mater. Sci. Eng., A Vol. 368 (2004) p.222.

Google Scholar

[34] D. Gilmore, R. Dykhuizen, R. Neiser, M. Smith, T. Roemer, J. Therm. Spray Technol. Vol. 8 (1999) p.576.

Google Scholar

[35] S. V. Klinkov, V. F. Kosarev, M. Rein, Aerosp. Sci. Technol. Vol. 9 (2005) p.582.

Google Scholar

[36] S. L. Goren, Aerosol Sci. Technol. Vol. 15 (1990) p.239.

Google Scholar

[37] Y. Rollot, Int. J. Adhes. Adhes. Vol. 19 (1999) p.35.

Google Scholar

[38] A. P. Alkhimov, Sov. Phys. Dokl. Vol. 35 (1990) p.1047.

Google Scholar

[39] A. P. Alkhimov, New Materials and Technologies, Theory and Practice of Materials Hardening in Extremal Processes Vol. (1992) p.

Google Scholar

[40] H. Assadi, F. Gartner, T. Stoltenhoff, H. Kreye, Acta Mater. Vol. 51 (2003) p.4379.

Google Scholar

[41] T. Schmidt, F. Gartner, H. Assadi, H. Kreye, Acta Mater. Vol. 54 (2006) p.729.

Google Scholar

[42] K. Spencer, M. -X. Zhang, Key Eng. Mater. Vol. 384 (2008) p.61.

Google Scholar

[43] J. Wu, H. Fang, S. Yoon, H. Kim, C. Lee, Scr. Mater. Vol. 54 (2006) p.665.

Google Scholar

[44] M. Grujicic, B. Pandurangan, W. C. Bell, M. Daqaq, L. Ma, N. Seyr, M. Erdmann, J. Holzleitner, Appl. Surf. Sci. Vol. 254 (2008) p.2136.

DOI: 10.1016/j.apsusc.2007.08.077

Google Scholar

[45] G. Bae, Y. Xiong, S. Kumar, K. Kang, C. Lee, Acta Mater. Vol. 56 (2008) p.4858.

Google Scholar

[46] G. Bae, S. Kumar, S. Yoon, K. Kang, H. Na, H. -J. Kim, C. Lee, Acta Mater. Vol. 57 (2009) p.5654.

Google Scholar

[47] T. Schmidt, F. Gaertner, H. Kreye, J. Therm. Spray Technol. Vol. 15 (2006) p.488.

Google Scholar

[48] K. Spencer, D. M. Fabijanic, M. X. Zhang, Surf. Coat. Technol. Vol. 204 (2009) p.336.

Google Scholar

[49] C. Borchers, F. Gartner, T. Stoltenhoff, H. Kreye, J. Appl. Phys. Vol. 96 (2004) p.4288.

Google Scholar

[50] T. Van Steenkiste, J. Smith, J. Therm. Spray Technol. Vol. 13 (2004) p.274.

Google Scholar

[51] W. B. Choi, L. Li, V. Luzin, R. Neiser, T. Gnaupel-Herold, H. J. Prask, S. Sampath, A. Gouldstone, Acta Mater. Vol. 55 (2007) p.857.

DOI: 10.1016/j.actamat.2006.09.006

Google Scholar

[52] X. Wu, N. Tao, Y. Hong, B. Xu, J. Lu, K. Lu, Acta Mater. Vol. 50 (2002) p. (2075).

Google Scholar

[53] C. Borchers, F. Gartner, T. Stoltenhoff, H. Assadi, H. Kreye, J. Appl. Phys. Vol. 93 (2003) p.10064.

Google Scholar

[54] R. McCune, W. Donlon, O. Popoola, E. Cartwright, J. Therm. Spray Technol. Vol. 9 (2000) p.73.

Google Scholar

[55] G. R. Canova, C. Fressengeas, A. Molinari, U. F. Kocks, Acta Metall. Vol. 36 (1988) p. (1961).

Google Scholar

[56] M. X. Zhang, P. M. Kelly, Scr. Mater. Vol. 37 (1997) p. (2017).

Google Scholar

[57] M. X. Zhang, P. M. Kelly, Acta Mater. Vol. 46 (1998) p.4081.

Google Scholar

[58] T. Price, P. Shipway, D. McCartney, E. Calla, D. Zhang, J. Therm. Spray Technol. Vol. 16 (2007) p.566.

Google Scholar

[59] K. Kang, J. Won, G. Bae, S. Ha, C. Lee, Journal of Materials Science Vol. 47 (2012) p.4649.

Google Scholar

[60] K. Kang, H. Park, G. Bae, C. Lee, Journal of Materials Science Vol. 47 (2012) p.4053.

Google Scholar

[61] Y. Xiong, K. Kang, G. Bae, S. Yoon, C. Lee, Applied Physics Letters Vol. 92 (2008) p.194101.

Google Scholar

[62] T. Hussain, D. McCartney, P. Shipway, D. Zhang, J. Therm. Spray Technol. Vol. 18 (2009) p.364.

Google Scholar

[63] R. Dykhuizen, M. Smith, D. Gilmore, R. Neiser, X. Jiang, S. Sampath, J. Therm. Spray Technol. Vol. 8 (1999) p.559.

Google Scholar

[64] H. Assadi, T. Schmidt, H. Richter, J. O. Kliemann, K. Binder, F. Gärtner, T. Klassen, H. Kreye, J. Therm. Spray Technol. Vol. 20 (2011) p.1161.

DOI: 10.1007/s11666-011-9662-9

Google Scholar

[65] T. Schmidt, H. Assadi, F. Gärtner, H. Richter, T. Stoltenhoff, H. Kreye, T. Klassen, J. Therm. Spray Technol. Vol. 18 (2009) p.794.

DOI: 10.1007/s11666-009-9357-7

Google Scholar

[66] J. Karthikeyan, Adv. Mater. Process. Vol. 164 (2006) p.12.

Google Scholar

[67] S. Sampath, X. Y. Jiang, J. Matejicek, L. Prchlik, A. Kulkarni, A. Vaidya, Mater. Sci. Eng., A Vol. 364 (2004) p.216.

Google Scholar

[68] T. Stoltenhoff, C. Borchers, F. Gartner, H. Kreye, Surf. Coat. Technol. Vol. 200 (2006) p.4947.

Google Scholar

[69] Q. Wang, N. Birbilis, M. -X. Zhang, Metall. Mater. Trans. A Vol. 43 (2012) p.1395.

Google Scholar

[70] V. Luzin, K. Spencer, M. X. Zhang, Acta Mater. Vol. 59 (2011) p.1259.

Google Scholar

[71] Y. Tao, T. Xiong, C. Sun, L. Kong, X. Cui, T. Li, G. -L. Song, Corro. Sci. Vol. 52 (2010) p.3191.

Google Scholar

[72] T. Hussain, D. McCartney, P. Shipway, T. Marrocco, J. Therm. Spray Technol. Vol. 20 (2010) p.260.

Google Scholar

[73] B. DeForce, T. Eden, J. Potter, J. Therm. Spray Technol. Vol. 20 (2011) p.1352.

Google Scholar

[74] D. Dzhurinskiy, E. Maeva, E. Leshchinsky, R. Maev, J. Therm. Spray Technol. Vol. (2012) p.1.

Google Scholar

[75] P. Richer, M. Yandouzi, L. Beauvais, B. Jodoin, Surf. Coat. Technol. Vol. 204 (2010) p.3962.

Google Scholar

[76] N. Bala, H. Singh, S. Prakash, Appl. Surf. Sci. Vol. 255 (2009) p.6862.

Google Scholar

[77] J. Karthikeyan, Adv. Mater. Process. Vol. 163 (2005) p.33.

Google Scholar

[78] F. Gartner, T. Stoltenhoff, J. Voyer, H. Kreye, S. Riekehr, M. Kocak, Surf. Coat. Technol. Vol. 200 (2006) p.6770.

Google Scholar

[79] S. Marx, A. Paul, A. Köhler, G. Hüttl, J. Therm. Spray Technol. Vol. 15 (2006) p.177.

Google Scholar

[80] J. Pattison, S. Celotto, R. Morgan, M. Bray, W. O'Neill, Int. J. Mach. Tools Manuf. Vol. 47 (2007) p.627.

Google Scholar